首页|High-efficiency ultrasonic assisted drilling of CFRP/Ti stacks under non-separation type and dry conditions

High-efficiency ultrasonic assisted drilling of CFRP/Ti stacks under non-separation type and dry conditions

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In this study,to address the low efficiency for conventional ultrasonic-assisted drilling(UAD)of carbon fiber-reinforced plastic and titanium alloy(CFRP/Ti)stacks,feasibility experiments of non-separation UAD,in which continuous cutting between the tool and the workpiece occurs at a high feed rate,are carried out.The experimental results indicate that,compared to conventional separation UAD,the non-separation UAD effectively reduces the cutting forces by 24.2%and 1.9%for CFRP stage and 22.1%and 2.6%for the Ti stage at the feed rates of 50 and 70 μm/r,respectively.Furthermore,the non-separation UAD significantly improves hole quality,including higher hole diameter accuracy,lower hole surface roughness,and less hole damage.In addition,the non-separation UAD can decrease adhesive tool wear.This study demonstrates that,compared to conventional drilling(CD),the non-separation UAD can effectively improve drilling quality and tool life while maintaining high efficiency.

Carbon fiber-reinforced plastic and titanium alloy(CFRP/Ti)stacksUltrasonic-assisted drilling(UAD)Cutting forceSurface integrityTool wear

Enze YING、Zehua ZHOU、Daxi GENG、Zhenyu SHAO、Zhefei SUN、Yihang LIU、Lianxing LIU、Xinggang JIANG、Deyuan ZHANG

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School of Mechanical Engineering and Automation,Beihang University,Beijing 100191,China

Beijing Chenjing Electronics Company Limited,Beijing 100015,China

Aerospace Times Feihong Technology Company Limited,Beijing 100094,China

国家自然科学基金国家自然科学基金航空科学基金

52375399919602032022Z045051001

2024

浙江大学学报(英文版)(A辑:应用物理和工程)
浙江大学

浙江大学学报(英文版)(A辑:应用物理和工程)

CSTPCD
影响因子:0.556
ISSN:1673-565X
年,卷(期):2024.25(4)
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